Interwire and Intrawire Magnetostatic Interactions in Fe-Au Barcode Nanowires with Alternating Ferromagnetically Strong and Weak Segments
Aleksei Yu. Samardak, Yoo Sang Jeon, Vadim Yu. Samardak, Alexey G., Kozlov, Kirill A. Rogachev, Alexey V. Ognev, Eunjin Jeong, Gyu Won Kim, Min, Jun Ko, Alexander S. Samardak, and Young Keun Kim

TL;DR
This paper investigates how geometrical parameters influence magnetostatic interactions in Fe-Au barcode nanowires, revealing the dominant interaction types depend on segment dimensions and spacing, with implications for magnetic behavior control.
Contribution
It introduces a detailed analysis of interwire and intrawire magnetostatic interactions in Fe-Au nanowires, combining experimental fabrication with micromagnetic simulations to identify interaction types.
Findings
Three types of magnetostatic interactions identified
Interaction dominance depends on segment geometry
Magnetic behavior can be tailored by geometric control
Abstract
Metallic barcode nanowires (BNWs) composed of repeating heterogeneous segments fabricated by template-assisted electrodeposition can offer extended functionality in magnetic, electrical, mechanical, and biomedical applications. We can consider such nanostructures as a three-dimensional system of magnetically interacting elements with magnetic behavior strongly affected by complex magnetostatic interactions. This study discusses the influence of geometrical parameters of segments on the character of their interactions and the overall magnetic behavior of the array of BNWs having alternating magnetization. By controlling the applied current densities and the elapsed time in the electrodeposition, we regulate the dimension of the Fe-Au BNWs. We show that the Fe and Au segments are made of Fe-Au alloys with high and low magnetization. With the help of micromagnetic simulations, we discover…
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Taxonomy
TopicsMagnetic properties of thin films · Electrodeposition and Electroless Coatings · Non-Destructive Testing Techniques
